拉明
生物发生
核板
细胞生物学
劈理(地质)
染色质
生物
调节器
生物化学
核蛋白
化学
转录因子
核心
基因
断裂(地质)
古生物学
作者
Katherine Augspurger,Elizabeth I. Martin,Jason C. Maynard,Kevin Welle,Sina Ghaemmaghami,A. L. Burlingame,Barbara Panning,Abigail Buchwalter
标识
DOI:10.1101/2025.03.11.642699
摘要
Lamin A processing is highly regulated, and necessary for proper assembly of the nuclear lamina facilitating its role in nuclear structure and chromatin organization. Pre-lamin A is first farnesylated, and then a short C-terminal peptide is cleaved to produce mature lamin A. O -GlcNAc Transferase (OGT), a glucose sensitive post-translational modification enzyme, is a potential regulator for lamin A processing. To explore the role of OGT in lamin A biogenesis, we examined the effects of OGT levels and OGT inhibition. Variation in OGT dose or inhibition of its activity did not alter endogenous lamin A abundance or distribution. To more directly test the regulatory effects of O -GlcNAcylation on lamin A, we adapted a tail cleavage assay. Mutation of an OGT binding motif and O -GlcNAc modification sites reduced tail cleavage efficiency, suggesting that O -GlcNAcylation promotes lamin A processing. Our findings add to the understanding of the regulation of lamin A cleavage and identify a potential link between glucose metabolism and lamina biogenesis.
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